RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Development and validation of a glioma-associated mesenchymal stem cell-related gene prognostic index for predicting prognosis and guiding individualized therapy in glioma.
Development and validation of a glioma-associated mesenchymal stem cell-related gene prognostic index for predicting prognosis and guiding individualized therapy in glioma.
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构建的 GA-MSCRGPI 可预测胶质瘤患者的预后并指导个体化治疗。
近期研究显示胶质瘤相关间充质干细胞(GA-MSC)参与调节胶质瘤恶性进展,但其预后价值尚未全面研究。
从胶质瘤组织分离GA-MSC,在裸鼠建立颅内异种移植模型并通过芯片获得相关基因。患者转录组和临床资料来自CGGA及TCGA数据库。采用多变量Cox回归筛选8个预后基因并构建指数,在CGGA693训练队列及TCGA、CGGA325验证队列检验;另以qRT-PCR验证78份组织中基因表达。
成功分离GA-MSC,筛得MCM7、CDK6、ORC1、CCL20、TNFRSF12A、POLA1、TRAF1和TIAM1,构建GA-MSC相关基因预后指数(GA-MSCRGPI)。训练和验证队列中,高指数患者生存较差。基于年龄、WHO分级和指数建立的列线图可较好预测总生存期,也可评估接受放化疗患者预后。高指数组免疫、基质和ESTIMATE评分更高、肿瘤纯度更低,Treg和M2巨噬细胞浸润较多、活化NK细胞较少,免疫检查点表达更高。TIDE分析提示高指数组可能有更多ICI应答者。不同亚组突变谱及肿瘤突变负荷进一步补充相关机制;8个基因表达与WHO分级在一定程度上相关。
GA-MSCRGPI可预测胶质瘤预后并辅助个体化治疗。
Recent studies have demonstrated that glioma-associated mesenchymal stem cells (GA-MSCs) are implicated in the regulation of glioma malignant progression. However, the prognostic value of GA-MSCs has not been comprehensively explored in glioma.
We extracted GA-MSCs from glioma tissues, established intracranial xenograft models in nude mice, and obtained GA-MSC-related genes (GA-MSCRGs) by using microarrays. The transcriptome data and clinical information of glioma patients were obtained from the CGGA and TCGA databases. We screened 8 prognostic GA-MSCRGs to construct a prognostic index by using the multivariate Cox regression method. The validity of the GA-MSCRGPI was verified in the training (CGGA693) and validation (TCGA and CGGA325) cohorts. The expression patterns of these 8 GA-MSCRGs were validated in 78 glioma tissue specimens by using a qRT PCR assay.
GA-MSCs were successfully isolated from glioma tissues. Based on intracranial xenograft models and transcriptome microarray screening, 8 genes (MCM7, CDK6, ORC1, CCL20, TNFRSF12A, POLA1, TRAF1 and TIAM1) were selected for the construction of a GA-MSC-related gene prognostic index (GA-MSCRGPI). In both the training and validation cohorts, high GA-MSCRGPI patients showed an inferior survival outcome compared with low GA-MSCRGPI patients. A nomogram was established based on independent prognostic indicators (age, WHO grade and GA-MSCRGPI) and exhibited a strong forecasting ability for overall survival (OS). Moreover, we found that the GA-MSCRGPI could evaluate the prognosis of glioma patients undergoing chemoradiotherapy. The high GA-MSCRGPI group exhibited higher immune, stromal and ESTIMATE scores; lower tumor purity; higher infiltration of Tregs and M2-type macrophages; fewer activated NK cells; and higher expression of immune checkpoints. Tumor Immune Dysfunction and Exclusion (TIDE) showed that the high GA-MSCRGPI group had more responders to ICI therapy. The results of the genetic mutation profile and tumor mutation burden (TMB) in different GA-MSCRGPI subgroups further supplement GA-MSCRGPI-related mechanisms. Finally, the expression patterns of 8 selected GA-MSCRGs in GA-MSCRGPI were correlated with glioma WHO grades to a certain extent.
The constructed GA-MSCRGPI could predict prognosis and guide individualized therapy in glioma patients.
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